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Review ArticleExperimental Studies

Molecular Mechanisms Regulating the Angiogenic Phenotype in Tumors: Clinical Impact in the Future

KARINE AUBRY, GUILAINE BARRIERE, HELENE CHABLE-RABINOVITCH, AURELIE DUTOUR, FRANCOIS PARAF, JACQUES MONTEIL and MICHEL RIGAUD
Anticancer Research September 2007, 27 (5A) 3111-3119;
KARINE AUBRY
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  • For correspondence: aubry.k@caramail.com
GUILAINE BARRIERE
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HELENE CHABLE-RABINOVITCH
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AURELIE DUTOUR
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FRANCOIS PARAF
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JACQUES MONTEIL
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MICHEL RIGAUD
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Abstract

Tumor progression depends on the angiogenic switch. In this review, we recapitulate the molecular mechanisms involved in this angiogenic switch. The rat osteosarcoma model employed would permit further studies in the sequential events leading to initial recruitment of blood vessels and could lead to development of an angiogenesis-based panel of circulating blood cells (endothelial cells, endothelial progenitor cells and accessory cells) that can be quantified and used to detect microscopic tumors or to follow the efficacy of antiangiogenic therapy. Such a result would lead to the possibility of early therapy in cancer progression.

  • Angiogenesis
  • circulating cells
  • endostatin
  • cancer dormancy
  • review

Footnotes

    • Received May 4, 2007.
    • Revision received July 2, 2007.
    • Accepted July 30, 2007.
    • Copyright© 2007 International Institute of Anticancer Research (Dr. John G. Delinassios), All rights reserved
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    Anticancer Research: 27 (5A)
    Anticancer Research
    Vol. 27, Issue 5A
    September-October 2007
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    Molecular Mechanisms Regulating the Angiogenic Phenotype in Tumors: Clinical Impact in the Future
    KARINE AUBRY, GUILAINE BARRIERE, HELENE CHABLE-RABINOVITCH, AURELIE DUTOUR, FRANCOIS PARAF, JACQUES MONTEIL, MICHEL RIGAUD
    Anticancer Research Sep 2007, 27 (5A) 3111-3119;

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    Molecular Mechanisms Regulating the Angiogenic Phenotype in Tumors: Clinical Impact in the Future
    KARINE AUBRY, GUILAINE BARRIERE, HELENE CHABLE-RABINOVITCH, AURELIE DUTOUR, FRANCOIS PARAF, JACQUES MONTEIL, MICHEL RIGAUD
    Anticancer Research Sep 2007, 27 (5A) 3111-3119;
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